Customized specifications are available upon request.
|
Code |
LH-3.5N |
LH-4N |
|
TREO% |
72-85 |
72-85 |
|
La purity and relative rare earth impurities |
||
|
La2O3/TREO % |
≥99.95 |
≥99.99 |
|
CeO2/TREO % |
<0.02 |
<0.004 |
|
Pr6O11/TREO % |
<0.01 |
<0.002 |
|
Nd2O3/TREO % |
<0.01 |
<0.002 |
|
Sm2O3/TREO % |
<0.005 |
<0.001 |
|
Y2O3/TREO % |
<0.005 |
<0.001 |
|
Non rare earth impurities |
||
|
Ca % |
<0.02 |
<0.02 |
|
Fe % |
<0.003 |
<0.002 |
|
Na % |
<0.005 |
<0.003 |
|
K % |
<0.003 |
<0.002 |
|
Pb % |
<0.003 |
<0.002 |
|
Al % |
<0.01 |
<0.005 |
|
SiO2 % |
<0.02 |
<0.01 |
|
Cl- % |
<0.06 |
<0.05 |
|
SO42- % |
<0.05 |
<0.03 |
Descriptive: WNX employs advanced automated production technology and uses high-quality raw materials to produce high-quality Lanthanum Hydroxide.
Key Features:
High Purity:Lanthanum Hydroxide contains no impurities from rare earth elements (such as iron, calcium, sodium), and the impurity content is low.
Good Solubility: Lanthanum Hydroxide can dissolve rapidly in water and strong acids.
Consistency: The strict batch management in the production of Lanthanum Hydroxide ensures stable quality for industrial large-scale production.
Chemical industry catalyst: Lithium hydroxide is a key component in the production of petroleum fluid catalytic cracking (FCC) catalysts. It can significantly enhance the efficiency and quality of fuel production, meeting environmental standards for clean fuels (such as Euro V and Euro VI). It can also be used as a ternary catalyst for vehicle exhaust purification, helping to convert harmful gases.
Efficient Phosphorus Removal Agent: Due to its chemical properties, lanthanum hydroxide can efficiently remove phosphate from water bodies through precipitation, and is widely used in wastewater treatment and the control of eutrophication in lakes and ponds. It can effectively inhibit the growth of algae.
Batteries and Energy Materials: Lithium hydroxide plays a crucial role in the manufacturing of nickel-metal hydride (NiMH) batteries, which are widely used in hybrid vehicles. Additionally, it is a potential precursor for key materials in solid oxide fuel cells (SOFC) and emerging solid-state battery technologies.
Chemical synthesis intermediates: As an important precursor raw material, lanthanum hydroxide is widely used in the synthesis of other lanthanum compounds, such as lanthanum oxide, lanthanum fluoride, and various lanthanum salts. These materials form the basis for manufacturing special glasses, precision ceramics, multilayer ceramic capacitors (MLCC), and rare earth luminescent materials.
1.Neutral labels/packaging (jumbo bag of 1.000kg each net),Two bags per pallet.
2.Vacuum-sealed, then wrapped in air cushion bags, and finally packed into iron drums.
Drum: Steel drums (open-top, 45L capacity, dimensions: φ365mm × 460mm / inner diameter × outer height).
Weight per Drum: 50 kg
Palletization: 18 drums per pallet (total 900 kg/pallet).
Transport Class: Maritime transportation / Air transportation